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- Asset Management
- Buoy
- Canal
- Climate Change
- Controls
- Dam Safety
- Environmental Impact
- Fish and Aquatic Resources
- Future Grid
- Generator
- Governor
- Hydraulic Forecasting
- Hydraulic Optimization
- Hydrokinetic
- Intake Gates
- Markets
- Penstock
- Regulatory Process
- Renewable Integration
- Sediment Transport
- Shoreline and Riparian Resources
- Spillgates
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- Water Management
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- Water Systems
- Wave
Conventional Hydro
针对新兴应用和水资源范例的新型变速水电控制方案的开发和实验硬件验证
Lead Companies
Oregon State University
Lead Researcher (s)
- Michael Starrett
在美国,最近的新水力发电机会通常是在无动力水坝和低影响自然地区和不受管制的管道中发生的河流型流动. At the same time, 在许多中高水头机组后面的供水水库处于历史低位的干旱地区,不断变化的水资源模式正在挑战一些现有的发电系统. 其结果是一个不断发展的市场空间,而能够变速操作的机器可能会最好地抓住这个市场空间. 与同步装置相比,变速装置具有更广泛的运行条件,并且通过20多年的抽水蓄能应用历史已经证明了其弹性. 这项工作开发了一种变速水力发电机组的控制方案,通过流量控制闸门提供设定点功率. 该控制方案既增加了机组的水文运行范围,又提高了机组在下垂和自动发电机控制下对电网突发事件的响应速度. 仿真结果在硬件上得到了验证.
Technology Application
Conventional Hydro
Research Category
Powerhouse Equipment
Research Sub-Category
Controls
Status
complete
Completion Date
2016
Conventional Hydro
TIP 274: Development & 双酚a的应用示范 & FCRPS符合建模标准 & Performance Monitoring
Lead Companies
BPA/美国陆军工程兵团(USACE)
Lead Researcher (s)
- Steve Yang, BPA
该项目为BPA和美国陆军工程兵团(USACE)开发并集成了一套全面的电厂模型验证和性能监控工具。. 它还开发了USACE执行基线测试和模型验证所需的能力,以满足WECC和BPA的要求.
Technology Application
Conventional Hydro
Research Category
Powerhouse Equipment
Research Sub-Category
Controls
Status
complete
Completion Date
2016
Conventional Hydro
TIP 313: Power-Frequency Control
Lead Companies
BPA/美国陆军工程兵团(USACE)/美国垦务局(USBOR)
Lead Researcher (s)
- Dmitry Kosterev, BPA
该项目研究了BPA满足NERC频率响应标准和可靠性挑战的技术方法. 它建立在现有TIP 50研究下的水力调速器设计和调谐工作的成功基础上,开发工厂控制和自动发电控制(AGC)策略,以满足各种可靠性目标. 通过调查频率控制之间的关系, angular stability, 并且本项目确定了解决电压稳定问题的各种技术策略的效益和可行性.
Technology Application
Conventional Hydro
Research Category
Powerhouse Equipment
Research Sub-Category
Controls
Status
complete
Completion Date
2017
Conventional Hydro
TIP 350:发电厂动态性能监测中心
Lead Companies
BPA/USACE/美国垦务局(USBOR)
Lead Researcher (s)
- Steve Yang, BPA
本项目开发并演示了一个用于电厂动态性能监测和模型验证的集成系统. 本系统具有以下功能: —事件检测和分类, 通知通过BPA电子邮件发送, e-mail includes event report. Data is extracted automatically -用状态估计器模型更新PPMV, 使用GE PSLF升级到新的API,不需要使用外部epcl -自动化模型验收过程,类似于PPMV过程 -根据性能指标(如频率响应义务和电压控制)对电厂性能进行常规基准测试 —部署小信号振荡检测应用, log events of sustained oscillations, 并提供数据提取功能
Technology Application
Conventional Hydro
Research Category
Powerhouse Equipment
Research Sub-Category
Controls
Status
complete
Completion Date
2018
Conventional Hydro
提示408:联邦哥伦比亚河电力系统(FCRPS)发电机建模, Monitoring and Governor, and Voltage Control Optimization
Lead Companies
BPA/美国陆军工程兵团(USACE)/美国垦务局(USBOR)
Lead Researcher (s)
- Dmitry Kosterev, BPA
- Steve Yang, BPA
- Gordon Kawaly, BPA
该项目是BPA传输公司和美国陆军工程兵团在发电机建模领域多年合作努力的延续, monitoring and control optimization. 该项目完成了TIP 274下开始的工作,重点是发电机一次控制(AVR)的优化, PSS, (总督)提供基本的可靠服务.
Technology Application
Conventional Hydro
Research Category
Powerhouse Equipment
Research Sub-Category
Controls
Status
ongoing
Completion Date
2020
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